Optical isotope shift and hyperfine structure measurements in preparation of the ultra-sensitive detection of krypton atoms using stepwise laser excitation and field ionization /

5s'[1/2]0' , IS3 , and three transitions from the 5s[3/212' ,

Bibliographic Details
Main Author: Lassen, Jens, 1966-
Format: Thesis eBook
Language:English
Published: [Place of publication not identified] : [publisher not identified] ; 1996.
Subjects:
Online Access:Link to OAKTrust copy
Description
Summary:5s'[1/2]0' , IS3 , and three transitions from the 5s[3/212' ,
apparatus and data acquisition was learned and optimized with
be in close reach .
been published previously. For the further development of
constants A and B. The results are the hyperfinestructure
constants and isotope shifts in two transitions from the
construction and installation of the necessary ion-optics and
correct expressions with Microcal ORIGIN and the IMSL
detectors. Changes have been prepared as a result of the
drifts in the measurements have been investigated. The
exchange process. Major contributions to fluctuations and
I S5 , metastable state of krypton. The results of the
ionization and foremost a two order of magnitude improvement
isotope shift measurements in the 892 nm line of Kr have not
of the vacuum conditions in the region the Rydberg atoms
of two step resonant excitation and field ionization seems to
ongoing measurements. These are quasicollinear excitation of
operation of the collinear fast beam laser spectroscopy
present data is evaluated using only the relativistically
respect to the reduction of stray laser light and the charge
shortening the distance between optical excitation and field
structure data when evaluating the hyperfine structure
subroutines to perform a least squares fit to the hyperfine
the Kr beam, avoiding optical pumping and stark shifts,
the trace detection of Kr isotopes the work resulted in the
traverse by differential pumping. The overall project goal
Within the scope of the ultra sensitive detection project the
Item Description:"Major subject: Physics".
Vita.
Physical Description:x, 98 leaves : illustrations ; 28 cm.
Also available online.
Issued also on microfiche from Lange Micrographics.
Bibliography:Includes bibliographical references: pages 93-97.